Technical field
[0001] The invention relates to smart wristwatches.
Background
[0002] The omnipresence of information on the network and the profusion of portable connected
devices makes it easy for users to access virtually any information independent from
time and location. For portable connected devices the information may conveniently
be transmitted from a network or from a dedicated local server to the portable connected
devices via radio means. Depending on the connectivity features of the concerned portable
connected device, the radio means may involve a cellular phone network, a wifi network,
a bluetooth connection, any other radio transmission as appropriate or a combination
of 2 or more or these.
[0003] Luxury wristwatches or watches constitute a category of the portable connected devices
and for this purpose comprise a connected smartwatch module. Luxury smartwatches may
have a metal encasing and/or a metal dial, either one of which effectively shields
radio signals and thereby may reduce the quality of radio signal reception inside
the wristwatch. The metal encasing may for example be in stainless steel or gold,
while the metal may also be in one or a plurality of various metals. The connected
smartwatch module needs to be able to receive and transmit data over radio frequency
communication.
[0004] It is an aim of the invention to maintain the luxury design of a wristwatch, considered
a personal jewel for the wearer while at the same time improving the quality of reception
of radio frequency communication.
Summary of invention
[0005] In a first aspect the invention provides a smart wristwatch comprising an antenna
configured to receive radio signals carrying information, and at least a hand and
a dial to display at least the time of the day in an analogue manner. The antenna
is comprised in the at least one hand.
[0006] In a preferred embodiment, a center axe driving the at least one hand is insulated
inside the wristwatch and connected to a balun of the wristwatch.
[0007] In a second aspect the smart wristwatch comprises an antenna configured to receive
signals carrying information, and an encasing made out of metal and enclosing at least
a balun. The smart wristwatch further comprises a ceramic plate configured to be fixed
on an opening of the encasing. The antenna is configured as a coil and is further
arranged on the surface of the ceramic plate.
[0008] In a preferred embodiment, the opening of the encasing is on a side of the wristwatch
intended to face a user's arm when the wristwatch is worn by the user.
[0009] In yet a further preferred embodiment, the coil is further connected to a charging
circuitry for an electric capacitor inside the wristwatch, and arranged to operate
as a receving coil for inductive reception of electrical power.
[0010] As is apparent from the preceding paragraphs, the present invention generally provides
a solution for realizing an antenna outside of the shielding encasing and dial of
the wristwatch.
Brief description of the drawings
[0011] The invention will be better understood in light of the description of preferred
embodiment and the drawings, wherein
figure 1 shows a schematic representaion of a smart wristwatch according to a preferred
embodiment of the invention;
figure 2 shows a schematic representation of an analogue dial of the smart wristwatch
according to an other preferred embodiment of the invention;
figure 3 shows a transversal cut through a wristwatch module according to yet an other
preferred embodiment of the invention;
figure 4 shows a view of the bottom of a wristwatch according to the invention;
figure 5 illustrates a transversal view through a wristwatch according to the invention;
and
figure 6 shows a more detailed representation of a transversal view through a wristwatch
according to the invention.
Detailed description of preferred embodiments
[0012] Figure 1 shows a schematic representation of a smart wristwatch and more particularly
of components that are required to realize such a wristwatch. These components include
a balun 1 that is connected to both a microprocessor 2 and an antenna 3.
[0013] Figure 2 shows a schematic representation of an analogue dial of the smart wristwatch.
Three hands 4 are used to display the time, e.g., one hand is used to point the hours,
an other hand the minutes and a further hand the seconds. One of the hands 4, e.g.,
the minute hand is also used as the antenna 3. A center axe driving the minute hand
4 is insultated inside the wristwatch module and connected to the balun (not illustrated
in figure 2).
[0014] Figure 3 shows a transversal cut through a wristwatch module according to a preferred
embodiment of the smart wristwatch, whereby the cut passes through a lenght of the
center axe appropriately arranged for driving the hands 4. In the illustration all
the hands 4 point is a same direction, and from top to bottom they are the minute
hand, the hour hand and a connected hand. Similar as in figure 2, the minute hand
also comprises the antenna 3 therein.
[0015] Figures 4-6 illustrate preferred embodiments in which the antenna 3, instead of being
in a hand 4, is realised on a ceramic disc 5 as a coil.
[0016] Figure 4 is a view from the bottom of a wristwatch, i.e., the caseback or the side
that is in contact with the body of the person wearing the wristwatch (person not
shown in figure 4 and not considered to be part of the invention).The caseback comprises
the ceramic disc 5 and the antenna 3 realized as a coil on the ceramic disc 5
[0017] Figure 5 illustrates a transversal view through a wristwatch according to a preferred
embodiment, comprising again the ceramic disc 5 used as a caseback of the wristwatch,
and the antenna 3, realised as a coil. The ceramic disc 5 functions as an insulator.
The antenna coil 3 is connected to the balun 1 (connection not shown in figure 5).
[0018] Figure 6 shows a detailed representation of a transversal view through a wristwatch
according to a further preferred embodiment, wherein the ceramic disc 5 is attached
to the wristwach at a cut-out made in a body 6 of the wristwatch. The ceramic disc
5 also carries on one of its surfaces the antenna coil 3.
[0019] While the antenna 3, which is embodied as a coil in figures 4 to 6 is intended for
use as a radio frequency communication receiving part it may alternatively also be
attributed to an induction charging circuitry, wherein it is used for contactless
charging of a capacitor inside the wristwatch module.
1. A smart wristwatch comprising
an antenna configured to receive radio signals carrying information; at least a hand
and a dial to display at least the time of the day in an analogue manner;
whereby the antenna is comprised in the at least one hand.
2. The smart wristwatch of claim 1, wherein
a center axe driving the at least one hand (4) is insulated inside the wristwatch
and connected to a balun of the wristwatch.
3. A smart wristwatch comprising
an antenna configured to receive signals carrying information;
an encasing made out of metal and enclosing at least a balun;
the smart wristwatch further comprising
a ceramic plate (5) configured to be fixed on an opening of the encasing;
whereby the antenna is configured as a coil and is further arranged on the surface
of the ceramic plate.
4. The smart wristwatch of claim 3, wherein the opening of the encasing is on a side
of the wristwatch intended to face a user's arm when the wristwatch is worn by the
user.
5. The smart wristwatch of any one of claims 3 and 4, wherein the coil is further connected
to a charging circuitry for an electric capacitor inside the wristwatch, and arranged
to operate as a receving coil for inductive reception of electrical power.